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Complexity-Reduced Adaptive Subchannel, Bit, and Power Allocation Algorithm and Its Throughput Analysis for Cellular OFDM System

机译:蜂窝OFDM系统降低复杂度的自适应子信道,比特和功率分配算法及其吞吐量分析。

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We introduce an adaptive subchannel, bit, and power allocation (ASBPA) algorithm to maximize the bandwidth efficiency of the mobile communication system that use orthogonal frequency division multiplexing (OFDM). We propose a suboptimal rate adaptive ASBPA algorithm that guarantees fairness in resource allocation and overcomes inherent co-channel interference (CCI) in the cellular system. Furthermore, we evaluate the maximum possible bandwidth efficiency of the cellular OFDM system achieved by the ASBPA algorithm which is practical to implement. Our simulation results show that the proposed algorithm outperforms the existing ones and achieves the cellular bandwidth efficiency of up to 5 b/s/Hz/cell. We also investigate some of the conditions that govern the bandwidth efficiency of the cellular OFDM system using the proposed ASBPA algorithm.
机译:我们引入了自适应子信道,比特和功率分配(ASBPA)算法,以最大化使用正交频分复用(OFDM)的移动通信系统的带宽效率。我们提出了次优速率自适应ASBPA算法,该算法可确保资源分配中的公平性并克服蜂窝系统中的固有同信道干扰(CCI)。此外,我们评估了由ASBPA算法实现的蜂窝OFDM系统的最大可能带宽效率,这是切实可行的。我们的仿真结果表明,所提出的算法优于现有算法,并实现了高达5 b / s / Hz / cell的蜂窝带宽效率。我们还使用提出的ASBPA算法研究了控制蜂窝OFDM系统带宽效率的一些条件。

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